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首页> 外文期刊>KSME International Journal >Control System for Tandem Cold Mills with Roll Eccentricity
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Control System for Tandem Cold Mills with Roll Eccentricity

机译:带辊偏心的串联冷轧机控制系统

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摘要

In order to meet the requirement for higher thickness accuracy in cold rolling processes, it is strongly desired to have high performance in control units. To meet this requirement, we have considered an output regulating control system with a roll-eccentricity estimator for each rolling stand of tandem cold mills. Considering entry thickness variation as well as roll eccentricity as the major disturbances, a synthesis of multivariable control systems is presented based on H{sub}∞ control theory, which can reflect the knowledge of input direction and spectrum of disturbance signals on the design. Then, to reject roll eccentricity effectively, a weight function having some poles on the imaginary axis is introduced. This leads to a non-standard H{sub}∞ control problem, and the design procedures for solving this problem are analytically presented. The effectiveness of the proposed control method is evaluated through computer simulations and compared to that of the conventional LQ control and feedforward control methods for roll eccentricity.
机译:为了满足在冷轧过程中更高的厚度精度的要求,强烈希望在控制单元中具有高性能。为了满足这一要求,我们考虑了一种用于串联冷轧机每个轧机机架的带有辊偏心率估算器的输出调节控制系统。考虑到入口厚度的变化以及轧辊偏心率是主要的扰动,基于H {sub}∞控制理论提出了一种多变量控制系统的综合方法,该方法可以在设计中反映出输入方向和扰动信号频谱的知识。然后,为了有效地抑制辊偏心,引入了在虚轴上具有一些极点的权重函数。这导致了非标准的H {sub}∞控制问题,并分析性地提出了解决该问题的设计程序。通过计算机仿真评估了所提出的控制方法的有效性,并与传统的LQ控制和前倾控制方法的轧辊偏心率进行了比较。

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